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Catalytic cracking of biomass pyrolysis tar over char-supported catalysts

机译:炭载催化剂上生物质热解焦油的催化裂化

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The work aims to investigate an effective method of catalytic reforming of tar during biomass high-temperature pyrolysis using rice husk char (RHC) and metal impregnated (Fe, Cu and K) char in a dual-stage reactor. The char and char-supported catalysts exhibited high catalytic performance, in terms of the high tar conversion efficiencies of 77.1% for RHC, 82.7% for K-RHC, 92.6% for Fe-RHC and 90.6% for Cu-RHC at 800 degrees C. Moreover, K-RHC and Cu-RHC catalysts after three cycles still exhibited high activity for tar removal. The catalytic tar conversion by char or char-supported catalysts contributes to improving the yield of syngas, particularly the combustible gases of H-2, CO and CH4, corresponding to the syngas yield increasing from 196.6 mL/g for thermal reforming to 269.6 mL/g for K-RHC, 274.9 mL/g for Cu-RHC and 342.7 mL/g for Fe-RHC at 800 degrees C, respectively. The results from GC-MS analysis illustrated that the addition of char and char-supported catalysts promoted the transformation of larger polycyclic aromatic hydrocarbons into lighter tar compounds, leading to an increase in the proportion of single-ring tars. XRD results indicated that the most active phases of the fresh K-RHC, Cu-RHC and Fe-RHC for tar cracking and reforming were KCl, Cu and Fe, respectively. Textural characterization showed the addition of Fe and Cu was in favor of producing highly porous carbon materials and led to the increase in specific surface area and total pore volume.
机译:该工作旨在研究在两级反应器中使用稻壳炭(RHC)和金属浸渍(Fe,Cu和K)炭在生物质高温热解过程中催化重整焦油的有效方法。炭和炭载催化剂表现出高催化性能,在800℃下,焦油转化率高,RHC为77.1%,K-RHC为82.7%,Fe-RHC为92.6%,Cu-RHC为90.6%。而且,在三个循环之后,K-RHC和Cu-RHC催化剂仍显示出高的脱焦油活性。炭或炭载催化剂催化的焦油转化率有助于提高合成气的收率,尤其是H-2,CO和CH4的可燃气体,对应于合成气收率从热重整的196.6 mL / g增加到269.6 mL / g在800摄氏度下,K-RHC的克数分别为274.9 mL / g和Cu-RHC的克数为342.7 mL / g。 GC-MS分析的结果表明,加入炭和炭载体催化剂促进了较大的多环芳烃向较轻的焦油化合物的转化,从而导致单环焦油的比例增加。 XRD结果表明,新鲜的K-RHC,Cu-RHC和Fe-RHC的最活跃的相分别为KCl,Cu和Fe。结构表征表明,添加铁和铜有利于生产高度多孔的碳材料,并导致比表面积和总孔体积的增加。

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